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利用酶促技术的聚合物材料一步法研究进展。

Advances in the One-Step Approach of Polymeric Materials Using Enzymatic Techniques.

作者信息

Herman Richard Ansah, Zhu Xuan, Ayepa Ellen, You Shuai, Wang Jun

机构信息

School of Materials Science and Engineering, Jiangsu University of Science and Technology, Zhenjiang 212100, China.

Jiangsu Key Laboratory of Sericultural Biology and Biotechnology, School of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang 212100, China.

出版信息

Polymers (Basel). 2023 Jan 30;15(3):703. doi: 10.3390/polym15030703.

Abstract

The formulation in which biochemical enzymes are administered in polymer science plays a key role in retaining their catalytic activity. The one-step synthesis of polymers with highly sequence-controlled enzymes is a strategy employed to provide enzymes with higher catalytic activity and thermostability in material sustainability. Enzyme-catalyzed chain growth polymerization reactions using activated monomers, protein-polymer complexation techniques, covalent and non-covalent interaction, and electrostatic interactions can provide means to develop formulations that maintain the stability of the enzyme during complex material processes. Multifarious applications of catalytic enzymes are usually attributed to their efficiency, pH, and temperature, thus, progressing with a critical structure-controlled synthesis of polymer materials. Due to the obvious economics of manufacturing and environmental sustainability, the green synthesis of enzyme-catalyzed materials has attracted significant interest. Several enzymes from microorganisms and plants via enzyme-mediated material synthesis have provided a viable alternative for the appropriate synthesis of polymers, effectively utilizing the one-step approach. This review analyzes more and deeper strategies and material technologies widely used in multi-enzyme cascade platforms for engineering polymer materials, as well as their potential industrial applications, to provide an update on current trends and gaps in the one-step synthesis of materials using catalytic enzymes.

摘要

在聚合物科学中,生化酶的给药配方在保持其催化活性方面起着关键作用。使用高度序列控制的酶一步合成聚合物是一种在材料可持续性方面为酶提供更高催化活性和热稳定性的策略。利用活化单体的酶催化链增长聚合反应、蛋白质 - 聚合物络合技术、共价和非共价相互作用以及静电相互作用,可以提供在复杂材料过程中保持酶稳定性的配方开发方法。催化酶的多种应用通常归因于它们的效率、pH值和温度,因此,随着聚合物材料关键结构控制合成的发展而不断进步。由于制造的明显经济性和环境可持续性,酶催化材料的绿色合成引起了极大的兴趣。通过酶介导的材料合成,来自微生物和植物的几种酶为聚合物的适当合成提供了一种可行的替代方法,有效地利用了一步法。本综述分析了在工程聚合物材料的多酶级联平台中广泛使用的更多、更深入的策略和材料技术,以及它们潜在的工业应用,以提供关于使用催化酶一步合成材料的当前趋势和差距的最新信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a54/9922006/7259e661647d/polymers-15-00703-g001.jpg

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